Session Details

[CU]CO2 utilization and storage

Fri. Aug 21, 2026 6:30 PM - 8:00 PM JST
Fri. Aug 21, 2026 9:30 AM - 11:00 AM UTC
PS1(International Confference Hall)

[CU-01]High-Yield Ethanol Synthesis from CO2 via Thermocatalytic Hydrogenation Using Promoted Metal Oxide Catalysts

*Andrii Kostyniuk1, Blaž Likozar1 (1. Department of Catalysis and Chemical Reaction Engineering, National Institute of Chemistry (Slovenia))
Comment()

[CU-02]Catalyst for Direct Conversion of Carbon Dioxide to Alkanes/Olefins

YenChih Chen1, *ChaoHuang Chen1, Kuo-Ching Wu1 (1. IIndustrial Technology Research Institute (Taiwan))
Comment()

[CU-03]CO2 Hydrogenation to C2+ Hydrocarbons over Fe-based Catalyst

*Eman Albaher1, Sarayute Chansai1, Marta Falkowska1, Arthur Garforth1, Christopher Hardacre1 (1. The University of Manchester (UK))
Comment()

[CU-04]CO2 Hydrogenation over Alkali Metal-Modified Supported Rh–MoOx Catalysts

*Takuma Sato1, Zenghao Wei1, Takehiro Matsuyama1, Hiroki Miura1,2, Tetsuya Shishido1,2 (1. Tokyo Metropolitan University (Japan), 2. Research Center for Hydrogen Energy-Based Society (Japan))
Comment()

[CU-05]Fabrication of Ru Nanocatalysts Supported on Nanosheet-Based Hierarchical Silicalite-1 for CO2 Hydrogenation

*Ethan Andrew Yang1, Tsung-Cheng Yang1, Ko-Kai Chang1, Yi-Wei Liao1, Chia-Min Yang1 (1. Natl. Tsing Hua Univ. (Taiwan))
Comment()

[CU-06]In-situ XRD and XES Investigations of Fe5C2, Fe3C and Fe2N during Ambient Pressure CO2 Hydrogenation

*Jui-Teng Huang1, Ethan Andrew Yang1, Li-Yu Wang1, Yu-Huan Lu1, Chia-Min Yang1 (1. Natl. Tsing Hua Univ. (Taiwan))
Comment()

[CU-07]Low-Temperature Methanol Synthesis via CO2 Hydrogenation over Pt/MoOx/TiO2 Catalysts

*Bohuan Ding1, Zenghao Wei1, Toru Murayama2, Hiroki Miura1,3, Tetsuya Shishido1,3 (1. Department of Applied Chemistry for Environment, Tokyo Metropolitan University (Japan), 2. Institute for Catalysis, Hokkaido University (Japan), 3. Research Center for Hydrogen Energy-Based Society, Tokyo Metropolitan University (Japan))
Comment()

[CU-08]Decarbonising Aviation in Australia: Off-Grid SAF Production via Methanol-to-Jet and Fischer–Tropsch Processes

*Mehdi Parivazh1, Akshat Tanksale1, Stuart Walsh2 (1. Department of Chemical and Biological Engineering, Monash University, Clayton, 3168, Victoria, Australia (Australia), 2. Department of Civil and Environmental Engineering, Monash University, Clayton, 3168, Victoria, Australia (Australia))
Comment()

[CU-09]CO2 absorption from air by liquid-solid phase separation using a blowing-type CO2 absorption reactor

*Xiaopan Xue1, Xuanbing Li1, Soichi Kikkawa1, Hideyuki Kawasoko1, Seiji Yamazoe1 (1. Tokyo Metropolitan University (Japan))
Comment()

[CU-10]Development of supported Pt catalysts alternately available for CO2 capture and conversion at low temperatures under an electric field

*Kai Betsui1, Keidai Tomozawa1, Daichi Inoue2, Nao Tsunoji2, Rin Suwa1, Masahiro Sadakane3, Tadaharu Ueda1, Shuhei Ogo1 (1. Kochi University (Japan), 2. Tottori University (Japan), 3. Hiroshima University (Japan))
Comment()

[CU-11]Ethanol CO2 Reforming using NiCuCeO2-ZrO2 Prepared by Sol-gel Method

Miina Katou1, *Hayato Shimizu1, Tadanori Hashimoto1, Atsushi Ishihara1 (1. Mie University (Japan))
Comment()

[CU-12]CO2 methanation on nickel catalysts modified with cerium and magnesium oxides

*Gaukhar Yergaziyeva1, Inzhu Kuanysh1, Manshuk Mambetova1, Nursaya Makayeva1, Laura Myltykbayeva2 (1. Institute of Combustion Problems (Kazakhstan), 2. Kazakh National University named after. Al-Farabi (Kazakhstan))
Comment()

[CU-13]Highly stable Co-based catalysts supported on hydrothermal-treated Al2O3 for the dry reforming of methane

*Jung-Hyun Park1, Hyeryeung Noh1, Sewoong Park1,2, Hwa Sung Lee1, Joong Jin Han1, Tae-Sun Chang1 (1. Korea Research Institute of Chemistry and Technology (Korea), 2. Chonnam National University (Korea))
Comment()

[CU-14]Hydrogen Spillover-Enhanced High-Temperature CO2 Capture of CaO on Ni-Ca/SBA-15

*Shan Zhang1, Shunsaku Yasumura1, Takeshi Ohnishi1, Masaru Ogura1 (1. The University of Tokyo (Japan))
Comment()

[CU-15]ZnAl2O4 Spinel-Supported Cu Catalyst for Reverse Water-Gas Shift Reaction

*Hong Ye1, Kensuke Izutani1, Yuto Komine1, Shinnosuke Sekizawa1, Keigo Tashiro2, Shigeo Satokawa1 (1. Seikei Univ. (Japan), 2. Shizuoka Univ. (Japan))
Comment()

[CU-16]CO2 Hydrogenation to Ethanol over Zeolite-Supported Catalysts

*Zenghao Wei1, Hiroki Miura1,2, Tetsuya Shishido1,2 (1. Department of Applied Chemistry, Tokyo Metropolitan University (Japan), 2. Research Center for Hydrogen Energy-Based Society, Tokyo Metropolitan University (Japan))
Comment()

[CU-17]CO generation from scallop shell by hydrogen treatment with catalyst

*Haruka Otsu1, Fuminori Saijo1, Hong Ye1, Shigeo Satokawa1 (1. Seikei University (Japan))
Comment()

[CU-18]Catalytic conversion of greenhouse gases: From catalyst design to photo-thermo coupling

*Zhou-jun Wang1,2, Guiming Xie1, Zhang-Jun Bai1, Chaonan Cui2 (1. Ningxia University (China), 2. Beijing University of Chemical Technology (China))
Comment()

[CU-19]Sorption Enhanced Dimethyl Ether Synthesis: A Novel Approach for Carbon Dioxide Utilisation

*Sijan Devkota1, Shashwat Srivastava1, Akshat Tanksale1, Paul Webley1 (1. Monash University (Australia))
Comment()

[CU-20]CO2 hydrogenation to hydrocarbons using tandem catalyst

*Aika Kurimoto1, Harune Yamaguchi1, Ryuji Kikuchi1, Kenta Iyoki2, Shohei Tada1 (1. Hokkaido University (Japan), 2. The University of Tokyo (Japan))
Comment()

[CU-21]Low-Temperature Reverse Water–Gas Shift Reaction on Vanadium Oxide Supported Platinum Catalyst

*SOICHIRO MIHARA1, Takehiro Matsuyama1, Hiroki Miura1,2, Tetsuya Shishido1,2 (1. Tokyo Metropolitan University (Japan), 2. Research Center for Hydrogen Energy-Based Society (Japan))
Comment()

[CU-22]Electric Field-Assisted CO2 Adsorption and Novel Carbonate Formation on Eutectic Mixture-Promoted MgO Sorbent

*You Seok Kang1, Monica Louise T. Triviño2, Yasushi Sekine3, Jeong Gil Seo1 (1. Hanyang University (Korea), 2. Technology Innovation Institute (United Arab Emirates), 3. Waseda University (Japan))
Comment()

[CU-23]FeCo Alloy Cluster-Modified Interfaces for CO2-to-Olefins Conversion

*Teng Li1, Yingluo He1, Zhiliang Jin2, Noritatsu Tsubaki1 (1. University of Toyama (Japan), 2. North Minzu University (China))
Comment()

[CU-24]Electric Field-Driven Reactive Capture and Conversion Process over Integrated Sorbent-Catalyst Systems

*Nomer Jr. Arriola1, You Seok Kang1, Yasushi Sekine2, Jeong Gil Seo1 (1. Hanyang University (Korea), 2. Waseda University (Japan))
Comment()

[CU-25]Tuning the Cu+/Cu0 Equilibrium in Cu/CeO2 Catalysts by External Electric Field for Reverse Water-Gas Shift Reaction

*Jinsol Lee1, Nomer Jr. Arriola1, Jeong Gil Seo1 (1. Hanyang University (Korea))
Comment()

[CU-26]Sustainable Pathway for the Synthesis of Methylamine from CO2, H2, and NH3

*Chen Hui1, Zeng Lei1, Cheng Kang1, Zhang Qinhong1, Wang Ye1 (1. Xiamen University (China))
Comment()

[CU-28]Carbonylation of Glycerol with CO2 to Glycerol Carbonate over ZnO/ZrO2

Wan-I Chen1, Ya-Chen Yu1, *Bing-Hung Chen1 (1. National Cheng Kung University (Taiwan))
Comment()

[CU-29]Ceria Supported Bimetallic Catalyst for CO2 Methanation Reaction

*Sherry H. HUANG1, Andrew C. Chien1 (1. Feng Chia Univ. (Taiwan))
Comment()

[CU-30]Dopant-Driven Phase Control in Photothermal CO2 Hydrogenation over Fe–K Catalysts

*Enrique V. Ramos Fernandez1, Vladislav Liamin1, Umme Habeeba1, Jorge Gascón1 (1. KAUST Catalysis Platform (Saudi Arabia))
Comment()

[CU-31]Role of magnesium aluminate supported nickel catalyst for dry reforming reaction

*Waleeporn Donphai1, Pongsaporn Poosri1 (1. Department of Chemical Engineering, Faculty of Engineering, Kasetsart University (Thailand))
Comment()

[CU-32]Plasma-catalytic CO2 utilization in presence of CeO2 mesoporous catalysts

*Oleg Golubev1, Anton Maximov2 (1. A.V. Topchiev Institute of Petrochemical Synthesis, Russian Academy of Sciences (TIPS RAS) (Russia), 2. Department of Chemistry, Lomonosov Moscow State University (Russia))
Comment()

[CU-33] Cancel

[CU-34]Influence of Zr precursors in Zn/UiO-66 synthesis on CO2 hydrogenation over MOF-derived ZnO-ZrO2

*Thidarat Imyen1, Nutkamaithorn Polsomboon1, Threerasak Supattaradilokkul1 (1. Department of Chemical Engineering, Faculty of Engineering, Kasetsart University (Thailand))
Comment()

[CU-35]Al2O3-supported Ru-Ni-K dual functional materials for CO2 capture and methanation under mild conditions

*Koga Kikuta1, Norikazu Namiki1, Zen Maeno1,2 (1. Kogakuin University (Japan), 2. JST PREST (Japan))
Comment()

[CU-36]Promotional effect of CeO2 on supported PtSn catalysts for oxidative dehydrogenation of propane with CO2

*Chao Peng1, Wen Zhong Liu1 (1. Shaanxi Normal University (China))
Comment()

[CU-37]Pd-Imidate@SBA-15: A Multifunctional Heterogeneous Catalyst for the Aqueous Room Temperature Hydrogenation of CO2 to Formic Acid

*Nuria García Martín1, Jose L Serrano3, Jose Perez3, Pedro Lozano4, Raul Porcar2, Eduardo García Verdugo1, Francisco García Cirujano1 (1. Universitat Jaume I (Spain), 2. UNED (Spain), 3. UPCT (Spain), 4. Universidad de Murcia (Spain))
Comment()

[CU-38]Bio-derived Organocatalyst System for Sustainable CO2 Cycloaddition into Cyclic Carbonates.

*Yanisa Pongsupradit1, Wuttichai Natongchai1, Valerio D' Elia1 (1. VISTEC (Thailand))
Comment()

[CU-39]Composition-Dependent Design of Co–Cu Catalysts for Efficient CO2 Conversion

*Juyeon Jung1, Yongseok Kim1, Kyungsu Na1 (1. Chonnam Nat. Univ. (Korea))
Comment()

[CU-40]CO2-Driven Conversion of Benzene to Value-added Chemicals

*Hanbit Jang1, Changgi Kim1, Seongeun Kim1, Sion Bae1, Eunseo Yun1, Kyungsu Na1 (1. Chonnam Nat. Univ. (Korea))
Comment()

[CU-41]New Insights for High-Through CO2 Hydrogenation to High-Quality Fuel

*Shunnosuke Fujii1, Chengwei Wang1, Yingluo He1, Noritatsu Tsubaki1 (1. Toyama Univ. (Japan))
Comment()

[CU-42]Hydrophobic interaction between alkylated TMG and alkylated silica for enhanced direct air capture under humid conditions

*Woosung Leem1, Seongeun Kim1, Adedeji Adebukola Adelodun2,4, Ji-Woong Lee2,3,4, Kyungsu Na1 (1. Department of Chemistry, Chonnam Nat. Univ. (Korea), 2. Department of Chemistry, Univ. of Copenhagen (Denmark), 3. Novo Nordisk Foundation CO2 Research Center (Denmark), 4. Nanoscience Center, Univ. of Copenhagen (Denmark))
Comment()

[CU-43]Experimental study on dry reforming of methane with atmospheric pressure microwave plasma-catalyst hybrid reactor

*Chang Hyun Cho1, Bon-Jun Ku2, Jung Woo Yoon1, In Je Kang1, KyuBock Lee2 (1. Korea Institute of Fusion Energy (KFE) (Korea), 2. Chungnam National University (Korea))
Comment()

[CU-44]Impact of surface functionalities and surface textures on carbonaceous materials for CO2 adsorption energetics

*Tzu-Hsuan Yang1,2, Shuo-Ren Shaw1,2, Shu-Li Li2, Chun-Chung Chan2, Po-Wen Chung1,2,3 (1. Institute of Chemistry, Academia Sinica (Taiwan), 2. National Taiwan University (Taiwan), 3. National Sun Yat-sen University (Taiwan))
Comment()

[CU-45]Fe/pillared montmorillonite catalyst for CO2 hydrogenation

*Zimu Miao1, Fuminao Kishimoto1, Yasuhiro Sakamoto1, Kazuhiro Takanabe1 (1. Department of Chemical System Engineering, School of Engineering, The University of Tokyo (Japan))
Comment()

[CU-46]Metal-promoted spinel nanostructures for CO2 hydrogenation to methanol

*Hagyeong Kim1, Hyeonji Yeom1, Kyungsu Na1 (1. Chonnam Nat. Univ. (Korea))
Comment()

[CU-47]Temperature Profile Control of CO2 Methanation by Using a Distributor Type Membrane Reactor

*Yuka Shimizu1,3, Hiroto Tsuyuki1, Shinichi Ookawara2, Marcin Moździerz3, Grzegorz Brus3, Mikihiro Nomura1 (1. Shibaura Inst. Tech. (Japan), 2. Yasuda Women's Univ. (Japan), 3. AGH Univ. Sci. and Tech. (Poland))
Comment()

[CU-48]Photo-enhanced catalytic activities of CO2 gas-cathodes in Zn-CO2 battery using ZnIn2Se4/TiO2 photocatalsyts

You-Chang Hung1, *Kong-Wei Cheng1,2 (1. Chang Gung Univerity (Taiwan), 2. Chang Gung Memorial Hospita (Taiwan))
Comment()

[CU-49]Unveiling the Precursor-dependent activity of Na-Ru/Al2O3 for Reactive CO2 Capture and Conversion

*Eun Ji Kim1, Dong Chan Park2, Do Heui Kim2, Inhak Song1 (1. Korea University (Korea), 2. Seoul National University (Korea))
Comment()

[CU-50]Thin MXene Layers as 2D Structural Promoters for Ni/Al2O3 in CO2 Methanation

*Chanwoo Park1, Inhak Song1 (1. Korea Univ. (Korea))
Comment()

[CU-51]Amino acid organocatalyst for the synthesis of Cyclic Carbonates from CO2 in a biphasic system

*Nattaphon Bil-usaman1 (1. Department of Materials Science and Engineering, Vidyasirimedhi Institute of Science and Technology, (VISTEC) (Thailand))
Comment()

[CU-52]Integrated CO2 Capture and Conversion to Value-added Chemicals

*Bin Shao1, Jun Hu1 (1. East China University of Science and Technology (China))
Comment()

[CU-53]Chemical Looping-Enhanced Hydrogenation of Carbonates
for Syngas Production

*Jun Hu1 (1. East China University of Science and Technology (China))
Comment()

[CU-54]CO2 conversion to methanol through membrane type reactor

*Shogo Okuma1, Hiroto Tsuyuki1, Yuka Shimizu1, Izabela Rzeznicka1, Mikihiro Nomura1 (1. Shibaura Institute of Technology (Japan))
Comment()

[CU-55]Plasmonic CZA Catalyst for Solar-Driven Methanol Production

*Francesc Sastre1, Alexia Magni1, Natalia Mazur1, Dimitrios Drettas1, Jelle Rohlfs1, Jonathan van den Ham1, Nicole Meulendijks1, Pascal Buskens1,2 (1. TNO (Netherlands), 2. Institute for Materials Research (imo-imomec) (Belgium))
Comment()

[CU-56]CO2 capture and Conversion Tandem System Using Zeolite-based Adsorbents and CO2 Hydrogenation Catalysts

*Akihiko Anzai1, Shinta Miyazaki1, Hsu Sheng Feng1, Takashi Toyao1, Ken-ichi Shimizu1 (1. Hokkaido University (Japan))
Comment()

[CU-57]Improved Direct Air Capture in Humid Condition via Alkyl-Alkyl Hydrophobic Contact between TMG and Silica

*Seongeun Kim1, Woosung Leem1, Adedeji Adebukola Adelodun2,4, Ji-Woong Lee2,3,4, Kyungsu Na1 (1. Department of Chemistry, Chonnam National Univ. (Korea), 2. Department of Chemistry, Univ. of Copenhagen (Denmark), 3. Novo Nordisk Foundation CO2 Research Center (Denmark), 4. Nanoscience Center, Univ. of Copenhagen (Denmark))
Comment()

[CU-58]CO2 Carboxylation of Ethylene to Acrylic Acid over Supported Pd aand AuNi Alloy Nanoparticle Catalysts

*Lihsien Chiao1, Kosei Arata1, Akihiro Nakayama2, Norihito Sakaguchi3, Toru Murayama3, Shinsuke Takagi1, Tetsuya Shimada1, Tamao Ishida4 (1. Tokyo Metropolitan University (Japan), 2. Kyushu University (Japan), 3. Hokkaido university (Japan), 4. Osaka Metropolitan University (Japan))
Comment()

[CU-59]Tailoring vanadium-impregnated small pore zeolite catalysts: Linking synthesis, structure, and activity in non-oxidative and CO2-assisted propane dehydrogenation

*Iqtidar Ali Khan1, Jose Alirio Mendoza Mesa1, Max Bols2, Run Zou1, Michiel Dusselier1 (1. KU Leuven (Belgium), 2. University of Ghent (Belgium))
Comment()

[CU-60]Low-temperature catalytic reverse water-gas shift reaction in an electric field

*Kento Shima1, Ryota Yamano1, Takuma Higo1, Yasushi Sekine1 (1. Waseda University (Japan))
Comment()

[CU-61]Synthesis of single atom and atomic cluster catalysts by chemical vapor deposition technique

*Heeyeon Kim1 (1. Korea Institute of Energy Research (Korea))
Comment()

[CU-62]Iron site dynamics and functionality in zeolites for CO2 and CH4 conversion

*Kinga Mlekodaj1, Agnieszka Kornas1, Julia Sobalska Julia Sobalska2,3, Karolina Tarach2, Lukaš Grajciar4, Carlos Bornes4, Dariusz Wardecki1,5, Przemysłlaw Rzepka1, Radim Pilar1, Petr Sazama1, Dominik K. Wierzbicki6, Thomas C Hansen7, Dalibor Kauckyý1, Olena Tynkevych2, Kinga Góra-Marek2, Edyta Tabor1 (1. J. Heyrovsky Institute of Physical Chemistry, Czech Academy of Sciences (Czech Republic), 2. Faculty of Chemistry, Jagiellonian University in Kraków (Poland), 3. Doctoral School of Exact and Natural Sciences, Jagiellonian University in Kraków (Poland), 4. Department of Physical and Macromolecular Chemistry, Charles University (Czech Republic), 5. Faculty of Physics, University of Warsaw (Poland), 6. National Synchrotron Light Source II, BNL (USA), 7. Institut Laue-Langevin (France))
Comment()

[CU-63]RWGS over Spinel-Precursor Cu Catalysts: Reduced CuAl2O4 Compared with Conventional Cu/Al2O3

*Myung-gi Seo1, Gang Min Lee1, Hyesun Shin1, Dojun Kim1, SooHyun Lee1, Joonwoo Kim1 (1. Research Institute of Industrial Science & Technology (RIST) (Korea))
Comment()

[CU-64]Optimization of Operating Variables in a Membrane-Contactor-Based CO2 Separation Process

*Namgyu Son1, Soohyun Lee1, Gun Heok Moon1, Hyesun Shin1, Hyunjun Park1, Joonwoo Kim1 (1. Research Institute of Industrial Science & Technology (RIST) (Korea))
Comment()

[CU-65]CO2 capture and utilization as a carbon feedstock to catalytically produce carbon nanofibers and convert biomass waste-derived porous carbon for energy storage devices

*Jarrn-Horng Lin1, Yao-Yang Chang2, Bo-Hung Wang2, Li-Ming Lu2 (1. College of Sustainability, National Tsing Hua University (Taiwan), 2. Department of Materials Science, National University of Tainan (Taiwan))
Comment()